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通过在厌氧期进行富磷液提取,从好氧颗粒污泥系统中稳定地增强生物除磷。

Achieving stably enhanced biological phosphorus removal from aerobic granular sludge system via phosphorus rich liquid extraction during anaerobic period.

机构信息

Faculty of Life and Environmental Sciences, University of Tsukuba, 1-1-1, Tennodai, Tsukuba, Ibaraki 305-8572, Japan.

Faculty of Life and Environmental Sciences, University of Tsukuba, 1-1-1, Tennodai, Tsukuba, Ibaraki 305-8572, Japan.

出版信息

Bioresour Technol. 2022 Feb;346:126439. doi: 10.1016/j.biortech.2021.126439. Epub 2021 Nov 28.

Abstract

In order to sustainably manage wastewater treatment plants and the environment, enhanced biological phosphorus (P) removal (EBPR) was proposed to achieve P recovery through extracting P-rich liquid (i.e., Phostrip) from the bottom of aerobic granular sludge (AGS)-based sequencing batch reactors (SBRs) under no mixing during the anaerobic phase. Results showed both tested bacterial AGS (BAGS) and algal-bacterial AGS (A-BAGS) systems stably produced low effluent P (<0.05 mg-P/L) with little impact on their organics and NH-N removals (>99%). The collected P-rich liquids (55-83 mg-P/L) from both systems showed great potential for P recovery of about 83.85 ± 0.57 % (BAGS) or 83.99 ± 0.77% (A-BAGS), which were contributed by the influent P (>95%) and P reserves in granules based on P balance analysis. This study suggests that the AGS-based SBRs coupling the Phostrip holds great potentials for P recovery profit and further reduction in energy consumption.

摘要

为了可持续地管理废水处理厂和环境,提出了增强型生物除磷(EBPR),通过在厌氧阶段不搅拌的情况下从好氧颗粒污泥(AGS)基序批式反应器(SBR)底部提取富磷液体(即 Phostrip),从而实现磷的回收。结果表明,两种测试的细菌AGS(BAGS)和藻菌AGS(A-BAGS)系统均稳定地产生低出水磷(<0.05 mg-P/L),对其有机物和 NH-N 去除率(>99%)影响很小。从这两个系统中收集的富磷液体(55-83 mg-P/L)具有很高的磷回收潜力,约为 83.85 ± 0.57%(BAGS)或 83.99 ± 0.77%(A-BAGS),这归因于基于磷平衡分析的进水磷(>95%)和颗粒中磷储备。本研究表明,AGS 基 SBR 与 Phostrip 耦合具有很大的磷回收利润和进一步降低能源消耗的潜力。

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